Proline plays an important role in the secondary structure of proteins. In the pursuit of understanding its structural role, Proline containing helices with constraints have been studied by employing molecular dynamics (MD) technique. In the present study, the constraint introduced is a threonine residue, whose sidechain has intramolecular hydrogen bond interaction with the backbone oxygen atom. The three systems that have been chosen for characterization are: (1) Ace-(Ala)12−Thr-Pro-(Ala)10−NHMe, (2) Ace-(Ala)13-Pro-Ala-Thr- (Ala)8-NHMe and (3) Ace-(Ala)13-Pro-(Ala)3-Thr-(Ala)6-NHMe. The equilibrium structures and structural transitions have been identified by monitoring the backbone dihedral angles, bend related parameters and the hydroge...
The polyproline II (PPII) conformation of protein backbone is an important secondary structure type....
The relation between the sequence of a protein and its three-dimensional structure remains largely u...
The biasing of proteins as ordered folds specific to their polypeptide sequences remains unknown in ...
Proline plays an important role in the secondary structure of proteins. In the pursuit of understand...
Proline residues in helices play an important role in the structure of proteins. The proline residue...
Proline residues in helices play an important role in the structure of proteins. The proline residue...
Proline residues play a special role in shaping the secondary and tertiary structures of proteins. M...
Many of the bilayer spanning segments of membrane transport proteins contain proline residues, and m...
The importance of prolines, glycines, and combinations of these residues in transmembrane α-helices ...
The effect of N-terminal diproline segment and charged side chains on the stabilization of helical c...
The proline residues in proteins are known to play an important structural role. Recently, the role ...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
none4The structure of unnatural hexapeptides, containing three L-valine units and three unnatural a ...
AbstractMany transmembrane helices contain serine and/or threonine residues whose side chains form i...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
The polyproline II (PPII) conformation of protein backbone is an important secondary structure type....
The relation between the sequence of a protein and its three-dimensional structure remains largely u...
The biasing of proteins as ordered folds specific to their polypeptide sequences remains unknown in ...
Proline plays an important role in the secondary structure of proteins. In the pursuit of understand...
Proline residues in helices play an important role in the structure of proteins. The proline residue...
Proline residues in helices play an important role in the structure of proteins. The proline residue...
Proline residues play a special role in shaping the secondary and tertiary structures of proteins. M...
Many of the bilayer spanning segments of membrane transport proteins contain proline residues, and m...
The importance of prolines, glycines, and combinations of these residues in transmembrane α-helices ...
The effect of N-terminal diproline segment and charged side chains on the stabilization of helical c...
The proline residues in proteins are known to play an important structural role. Recently, the role ...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
none4The structure of unnatural hexapeptides, containing three L-valine units and three unnatural a ...
AbstractMany transmembrane helices contain serine and/or threonine residues whose side chains form i...
Disordered proline-rich motifs are common across the proteomes of many species and are often involve...
The polyproline II (PPII) conformation of protein backbone is an important secondary structure type....
The relation between the sequence of a protein and its three-dimensional structure remains largely u...
The biasing of proteins as ordered folds specific to their polypeptide sequences remains unknown in ...